LWIR
Infrared Cameras are probably the most prevalent thermal
imaging devices available today as a result of the
introduction of the uncooled microbolometer used to
produce a low-cost infrared detector having excellent
performance. In addition, LWIR cameras are available
that have remarkable sensitivity because of the use
of high quantum efficiency cooled detectors.
The
ATOM™ 1024 incorporates a ULIS advanced
all silicon 1024x768 microbolometer detector
array and state-of-the-art 17 micron pixel pitch
technology to deliver extremely high resolution
in an XGA format. Because of the camera's small
compact size and low power consumption,
the ATOM 1024 is easy to integrate, and ideally
suited for a wide range of military and COTS
themal imaging systems. The ATOM 1024's short
thermal time constant produces superior thermal
image quality, even while imaging fast moving
objects, making the system an ideal choice for
handheld, ground vehicle and airborne EOIR platforms
and advanced fusion-based night vision systems.
Atom™
640 - Uncooled OEM Camera Module
The
ATOM™ 640 integrates advanced miniaturized
electronics and state-of-the-art 17 micron pixel
technology into the world’s smallest high
resolution thermal imaging module. Consuming
less than 1 W and with a total volume of approximately
6 in3, the ATOM 640 high performance
thermal imager is ideal for integration into
hand held thermal imaging product and small unmanned
platforms. Available in both military and commercial
qualified models, the ATOM 640 delivers exceptional
image quality and includes a rich set of software
features and user interface options.
IRE
- Cooled Infrared Imaging Engines
MCT-based
short-wave infrared imaging system with
extraordinarily high quantum efficiency
performance in the spectral range 800nm
to 2500nm. Depending on the desired configuration,
a wide range of near infrared lenses and
options are available to match your imaging
requirements.
US export restrictions
apply to this product. Contact us for further
information.
D*STAR
Software Suite
The D*STAR
digital storage and retrieval and image
processing software suite for infrared
imaging research and development applications
is a feature rich, real-time image capture
and thermal analysis software for the Sofradir
EC IRE line of high performance infrared
cameras. D*STAR features a highly intuitive
user interface and a library of powerful
tools that enable the sophisticated analysis
of thermal behavior for a wide range of
objects and materials.
Comprehensive
camera controls maximize the performance of
the Sofradir EC IRE infrared cameras. D*STAR
features a large selection of real-time
analysis tools including spot meters, line
profile, region of interest analysis (circle,
ellipse, box) and isotherms. Unique object
parameters (emissivity, background temp)
can be set for each measurement tool. And
an intuitive user interface ensures you're
up and runniing fast.
SSC-320VL
Infrared Camera
The SSC-320VL
infrared camera is ideally suited for high performance
infrared imaging in the very long-wave (7-13
µm) spectral range. The SSC-320VL camera incorporates
a high sensitivity 320x256 format HgCdTe infrared
detector and is designed with a sealed, rugged
housing enabling a wide range of applications
including tracking, cold temperature work, target
signature radiometric data collection, high speed
imaging and infrared imaging spectroscopy.
SSC-320L
Infrared Camera
The SSC-320L
infrared camera is ideally suited for high performance
infrared imaging in the long-wave (7-10 µm) spectral
range. The SSC-320L camera incorporates a high
sensitivity 320x256 format HgCdTe infrared detector
and is designed with a sealed, rugged housing
enabling a wide range of applications including
tracking, cold temperature work, target signature
radiometric data collection, high speed imaging
and infrared imaging spectroscopy.
Optical
Filters for Infrared Cameras
These
optical filters are perfect for many imaging
applications that benefit from blocking out-of-band
electromagnetic radiation while passing other
wavelength regions. These filters are normally
positioned in front of a camera’s objective lens
or between the camera’s lens and imaging sensor.
When positioned as such, the filters attenuate
(by reflection and absorption) out-of-band transmission
and transmit the desired spectral region. Constructed
of hard, durable coatings on optical-quality
substrates, these filters will withstand normal
cleaning and handling associated with any high
quality optical component. Custom filter wavelength
characteristics and sizes are available upon
request.
Velocity
Thermal Analysis Software
Velocity
is a powerful real-time thermographic analysis
software application designed to work with the
PV320's USB 2.0 high-speed serial 16-bit real-time
interface. Cost effective and simple to operate,
Velocity features a comprehensive suite of temperature
analysis tools including multiple spot meters,
isotherms, area analysis, line profiles, radiometric
variable input and time verse temperature plotting.
No frame grabber is required, allowing Velocity
to work with any USB 2.0 enabled notebook or
desktop PC.
Thermography
Studio Software Suite for SSC Cameras
Thermography
Studio is a feature rich, real-time image capture
and thermal analysis software for the SSC line
of infrared cameras. Thermography Studio features
a highly intuitive user interface and a library
of powerful tools that enable the sophisticated
analysis of thermal behavior for a wide range
of objects and materials. Thermography Studio
features powerful real-time analysis tools including
spot meters, line profile, area analysis and
isotherms.
PV320L
Thermal Infrared Camera
The PV320L is a unique
broadband infrared camera that incorporates
a high resolution (320x240) uncooled focal
plane array and advanced features including
a USB 2.0 high-speed digital output and
internal automatic image calibration (AIC).
The PV320L's integral zinc selenide non-fringing
detector window provides the broadest possible
spectral band (2-20 microns) and makes
it ideal for a wide range of laser beam
analysis and other broadband spectroscopy
applications.